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The validity of Actiwatch2 and SenseWear armband compared against polysomnography at different ambient temperature conditions

机译:在不同环境温度条件下Actiwatch2和SenseWear臂带与多导睡眠图相比的有效性

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摘要

There were no validation studies on portable sleep devices under different ambient temperature, thus this study evaluated the validity of wrist Actiwatch2 (AW2) or SenseWear armband (SWA) against polysomnography (PSG) in different ambient temperatures. Nine healthy young participants (6 males, aged 23.3±4.1 y) underwent nine nights of study at ambient temperature of 17 °C, 22 °C and 29 °C in random order, after an adaptation night. They wore the AW2 and SWA while being monitored for PSG simultaneously. A linear mixed model indicated that AW2 is valid for sleep onset latency (SOL), total sleep time (TST) and sleep efficiency (SE) but significantly overestimated wake after sleep onset (WASO) at 17 °C and 22 °C. SWA is valid for WASO, TST and SE at these temperatures, but severely underestimates SOL. However, at 29 °C, SWA significantly overestimated WASO and underestimated TST and SE. Bland–Altman plots showed small biases with acceptable limits of agreement (LoA) for AW2 whereas, small biases and relatively wider LoA for most sleep variables were observed in SWA. The kappa statistic showed a moderate sleep–wake epoch agreement, with a high sensitivity but poor specificity; wake detection remains suboptimal. AW2 showed small biases for most of sleep variables at all temperature conditions, except for WASO. SWA is reliable for measures of TST, WASO and SE at 17–22 °C but not at 29 °C, and SOL approximates that of PSG only at 29 °C, thus caution is needed when monitoring sleep at different temperatures, especially in home sleep studies, in which temperature conditions are more variable.
机译:没有在不同环境温度下对便携式睡眠设备进行验证的研究,因此该研究评估了腕带Actiwatch2(AW2)或SenseWear臂带(SWA)在不同环境温度下对抗多导睡眠图(PSG)的有效性。适应之夜后,九名健康的年轻参与者(6名男性,年龄23.3±4.1岁)在17°C,22°C和29°C的环境温度下随机进行了9个晚上的研究。他们穿着AW2和SWA,同时受到PSG监控。线性混合模型表明,AW2对于17°C和22°C的睡眠发作潜伏期(SOL),总睡眠时间(TST)和睡眠效率(SE)有效,但显着高估了睡眠发作后的唤醒(WASO)。在这些温度下,SWA对WASO,TST和SE有效,但严重低估了SOL。但是,在29°C时,SWA明显高估了WASO,而低估了TST和SE。 Bland-Altman图显示了AW2的较小偏差和可接受的协议极限(LoA),而SWA中观察到大多数睡眠变量的较小偏差和相对较宽的LoA。 kappa统计数据显示出适度的睡眠-唤醒纪元,敏感性高但特异性差;唤醒检测仍然不理想。除WASO外,AW2在所有温度条件下对大多数睡眠变量均显示出较小的偏差。对于在17-22°C而非29°C的温度下进行TST,WASO和SE的测量,SWA是可靠的,并且SOL仅在29°C时接近PSG的测量值,因此在不同温度下(尤其是在家中)监控睡眠时需要谨慎睡眠研究,其中温度条件变化更大。

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